Mechanical locking of floor panels
Floor panels ( 1, 1 ′) are shown, which are provided with a mechanical locking system on long ( 5 a , 5 b ) and short edges ( 4 a , 4 b ) allowing installation with angling of long edges and where the short edge locking system has a displaceable tongue that is displaceable essentially in one direction from an inner unlocked position to an final locked position.
1. A set of floor panels provided with a locking system, the locking system comprising a separate displaceable tongue integrated with an edge of a floor panel for connecting the edge vertically to an adjacent edge of a similar panel,
wherein at least a part of the displaceable tongue is displaceable in a first horizontal direction,
wherein the displaceable tongue is configured so that a pressure in a second horizontal direction substantially perpendicular to the first horizontal direction at an edge section of the displaceable tongue and essentially along the edge causes displacement of the displaceable tongue in the first horizontal direction, and
wherein the floor panel and the similar floor panel are configured to be locked vertically by the displacement of the displaceable tongue in the first horizontal direction.
2. A set of floor panels provided with a locking system, the locking system comprising a separate displaceable tongue integrated with an edge of a floor panel for connecting the edge vertically to an adjacent edge of a similar panel,
wherein at least a part of the displaceable tongue is displaceable in a first horizontal direction, and
wherein the floor panel and the similar floor panel are configured to be locked vertically by a pressure applied in a second horizontal direction substantially perpendicular to the first direction at an edge section of the displaceable tongue and essentially along the edge,
wherein the floor panels are provided with first and second connectors, the connectors are integrated with the floor panels and configured to connect adjacent edges, the first connector comprises a locking strip with an upwardly directed locking element at the edge of the floor panel and a downwardly open locking groove at an adjacent edge of another floor panel for connecting the adjacent edges in a horizontal direction perpendicular to the adjacent edges, the second connector comprises the displaceable tongue at the edge of the floor panel, and a horizontally open tongue groove in the adjacent edge of the another floor panel for connecting the adjacent edges in vertical direction, the connectors are configured to be locked with angling or a vertical motion,
wherein a locking part of the displaceable tongue is arranged in an inner initial position in a displacement groove at the edge of the floor panel, and
wherein the locking part is configured to be displaced in the first horizontal direction from the initial unlocked position to a final outer locked position in the tongue groove of another the floor panel by the pressure directed in the second horizontal direction.
3. The set of floor panels as claimed in claim 2 , wherein the displaceable tongue of a panel in a first row is configured such that the displacement of the locking part is caused by an edge of a panel in a second row.
4. The set of floor panels as claimed in claim 3 , wherein the displaceable tongue is flexible and wherein a part of the tongue is bent in the length direction of the tongue.
5. The set of floor panels as claimed in claim 3 , wherein the width of the tongue varies in the length direction before the pressure is applied to the tongue.
6. The set of floor panels as claimed in claim 1 , wherein the displacement is caused by a bending principle.
7. The set of floor panels as claimed in claim 1 , wherein the displacement is caused by a link principle in which a portion of the displaceable tongue is rotated around a point.
8. The set of floor panels as claimed in claim 1 , wherein the displacement is caused by a wedge principle.
9. The set of floor panels as claimed in claim 1 , wherein the separate displaceable tongue is an injection moulded plastic component.
10. The set of floor panels as claimed in claim 9 , wherein the injection moulded plastic component is made of polymer materials.
11. The set of floor panels as claimed in claim 10 , wherein the polymer material is selected from the group consisting of PA (nylon), POM, PC, PP, PET and PE.
12. The set of floor panels as claimed in claim 9 , wherein the injection moulded plastic component is of glass fibre reinforced PP or POM.
13. The set of floor panels as claimed in claim 1 , wherein the separate displaceable tongue comprises wood based material.
14. The set of floor panels as claimed in claim 3 , wherein the displacement is caused by a bending principle.
15. The set of floor panels as claimed in claim 3 , wherein the displacement is caused by a link principle in which a portion of the displaceable tongue is rotated around a point.
16. The set of floor panels as claimed in claim 3 , wherein the displacement is caused by a wedge principle.
17. The set of floor panels as claimed in claim 3 , wherein the separate displaceable tongue is an injection moulded plastic component.
18. The set of floor panels as claimed in claim 17 , wherein the injection moulded plastic component is made of polymer materials.
19. The set of floor panels as claimed in claim 18 , wherein the polymer material is selected from the group consisting of PA (nylon), POM, PC, PP, PET and PE.
20. The set of floor panels as claimed in claim 17 , wherein the injection moulded plastic component is of glass fibre reinforced PP or POM.
21. The set of floor panels as claimed in claim 3 , wherein the separate displaceable tongue comprises wood based material.
22. The set of floor panels as claimed in claim 1 , wherein the displaceable tongue is flexible and wherein a part of the tongue is bent in the length direction of the tongue.
23. The set of floor panels as claimed in claim 1 , wherein the width of the tongue varies in the length direction before the pressure is applied to the tongue.